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Curcumin-carboxymethyl chitosan (CNC) conjugate and CNC/LHR mixed polymeric micelles as new approaches to improve the oral absorption of P-gp substrate drugs

机译:姜黄素-羧甲基壳聚糖(CNC)共轭物和CNC / LHR混合聚合物胶束是改善P-gp底物药物口服吸收的新方法

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摘要

The low oral bioavailability of numerous drugs has been mostly attributed to the significant effect of P-gp-mediated efflux on intestinal drug transport. Herein, we developed mixed polymeric micelles (MPMs) comprised of curcumin-carboxymethyl chitosan (CNC) conjugate, as a potential inhibitor of P-gp-mediated efflux and gastrointestinal absorption enhancer, and low-molecular-weight heparin-all-trans-retinoid acid (LHR) conjugate, as loading material, with the aim to improve the oral absorption of P-gp substrate drugs. CNC conjugate was synthesized by chemical bonding of curcumin (Cur) and carboxymethyl chitosan (CMCS) taking advantage of the inhibition of intestinal P-gp-mediated secretion by Cur and the intestinal absorption enhancement by CMCS. The chemical structure of CNC conjugate was characterized by H-1 NMR with a degree of substitution of Cur of 4.52-10.20%. More importantly, CNC conjugate markedly improved the stability of Cur in physiological pH. Cyclosporine A-loaded CNC/LHR MPMs (CsA-CNC/LHR MPMs) were prepared by dialysis method, with high drug loading 25.45% and nanoscaled particle size (approximate to 200nm). In situ single-pass perfusion studies in rats showed that both CsA+CNC mixture and CsA-CNC/LHR MPMs achieved significantly higher K-a and P-eff than CsA suspension in the duodenum and jejunum segments (p< 0.01), which was comparable to verapamil coperfusion effect. Similarly, CsA+CNC mixture and CsA-CNC/LHR MPMs significantly increased the oral bioavailability of CsA as compared to CsA suspension. These results suggest that CNC conjugate might be considered as a promising gastrointestinal absorption enhancer, while CNC/LHR MPMs had the potential to improve the oral absorption of P-gp substrate drugs.
机译:许多药物的口服生物利用度低主要归因于P-gp介导的肠道药物转运的显着影响。在这里,我们开发了由姜黄素-羧甲基壳聚糖(CNC)共轭物组成的混合聚合物胶束(MPM),作为P-gp介导的外排和胃肠道吸收促进剂的潜在抑制剂,以及低分子量肝素全反式维甲酸酸(LHR)偶联物作为负载材料,旨在改善P-gp底物药物的口服吸收。 CNC结合物是通过姜黄素(Cur)和羧甲基壳聚糖(CMCS)的化学键合而合成的,利用了Cur抑制肠P-gp介导的分泌和CMCS增强肠吸收。 CNC共轭物的化学结构通过H-1 NMR表征,Cur的取代度为4.52-10.20%。更重要的是,CNC共轭物显着提高了Cur在生理pH中的稳定性。采用渗析法制备了环孢霉素A负载的CNC / LHR MPMs(CsA-CNC / LHR MPMs),载药量高,达到25.45%,纳米级粒径(约200nm)。在大鼠中进行的原位单程灌注研究表明,CsA + CNC混合物和CsA-CNC / LHR MPM均在十二指肠和空肠段获得了比CsA悬浮液高得多的Ka和P-eff(p <0.01),与维拉帕米灌流作用。同样,与CsA悬浮液相比,CsA + CNC混合物和CsA-CNC / LHR MPM显着提高了CsA的口服生物利用度。这些结果表明,CNC共轭物可能被认为是一种有希望的胃肠道吸收促进剂,而CNC / LHR MPM具有改善P-gp底物药物口服吸收的潜力。

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